[Example] Improvement of magnetic field strength detection accuracy (Oe) using a linear hall IC.
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Utilized for verifying the shielding effect of magnetic shield plates under the premise of a static magnetic field environment!
In the process of verifying the effectiveness of the shield plate against the strength of the magnetic field (magnetic flux density) (Oe), a study was conducted using a linear Hall IC. It was necessary to capture the fluctuation conditions below 1 (Oe), but the sensors available on the market did not provide standalone performance. Therefore, a combination of software processing on the measurement side and a high-precision measurement module was used to achieve a high-precision detection environment. Under the premise of a static magnetic field environment, it was utilized for verifying the shielding effect of the magnetic shield plate through actual measurements and simulations.
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In the process of verifying the effectiveness of the shielding plate against the strength of the magnetic field (Oe), a study was conducted using a linear Hall IC. It was necessary to capture the variations below 1 (Oe), but existing sensors on the market do not provide standalone performance. Therefore, a combination of software processing on the measurement side and a high-precision measurement module was implemented to achieve a high-precision detection environment. Under the premise of a static magnetic field environment, it was utilized for verifying the shielding effect of the magnetic shielding plate through actual measurements and simulations.
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As a development and design company, we promote the development, design, and evaluation of semiconductor peripheral circuits and application products through simulation technology.

